Article (Scientific journals)
Single-molecule tracking reveals two low-mobility states for chromatin and transcriptional regulators within the nucleus
Wagh, Kaustubh; Stavreva, Diana A; Jensen, Rikke AM et al.
2022In Science Advances
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Abstract :
[en] How transcription factors (TFs) navigate the complex nuclear environment to assemble the transcriptional machinery at specific genomic loci remains elusive. Using single-molecule tracking, coupled with machine learning, we examined the mobility of multiple transcriptional regulators. We show that H2B and ten different transcriptional regulators display two distinct low-mobility states. Our results indicate that both states represent dynamic interactions with chromatin. Ligand activation results in a dramatic increase in the proportion of steroid receptors in the lowest mobility state. Mutational analysis revealed that only chromatin interactions in the lowest mobility state require an intact DNA-binding domain as well as oligomerization domains. Importantly, these states are not spatially separated as previously believed but in fact, individual H2B and TF molecules can dynamically switch between them. Together, our results identify two unique and distinct low-mobility states of transcriptional regulators that appear to represent common pathways for transcription activation in mammalian cells.
Disciplines :
Biochemistry, biophysics & molecular biology
Author, co-author :
Wagh, Kaustubh
Stavreva, Diana A
Jensen, Rikke AM
Paakinaho, Ville
Fettweis, Grégory  ;  Université de Liège - ULiège > Département des sciences de la vie > Génétique et biologie moléculaires animales
Schiltz, R Louis
Wüstner, Daniel 
Mandrup, Susanne
Presman, Diego M 
Upadhyaya, Arpita
Hager, Gordon L
Language :
English
Title :
Single-molecule tracking reveals two low-mobility states for chromatin and transcriptional regulators within the nucleus
Publication date :
25 July 2022
Journal title :
Science Advances
eISSN :
2375-2548
Publisher :
American Association for the Advancement of Science (AAAS), Washington, United States - District of Columbia
Peer reviewed :
Peer Reviewed verified by ORBi
Available on ORBi :
since 23 May 2023

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